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A maximum biodiesel yield of 90%(by mass) was obtained.
In the present work, maximum biodiesel yield and minimum viscosity were assigned as objectives.
The maximum biodiesel yield under the optimized conditions was 99.38 wt.%.
The doping process was optimised for maximum biodiesel yield considering four parameters viz.
The maximum biodiesel yield was obtained for 4 h of reaction under excess methanol at temperature of 60 °C.
The maximum biodiesel yield of 0.21 g/g of dry biomass was obtained through the acid base catalytic process.
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Maximum biodiesel yields of ∼0.46 and ∼0.48 g/g of lipids were reached from wet and dry unwashed algal biomass, respectively, at 255 265 °C, 50 min reaction time, and using a methanol to dry algae ratio of 10 1 (vol./wt)./wt
The maximum basicity and biodiesel yield obtained were about 194 μmol/g and 94%, respectively.
In optimizations with NaOH, a maximum (96%) of biodiesel yield was obtained at 60 °C by keeping other conditions constant.
On the other hand, in optimization with KOH, optimized temperature was 60 °C for a maximum yield (89%) of biodiesel yield where constant conditions were: methanol to oil ratio of 40% (v/v), catalyst concentration of 1.28 wt% and reaction time of 45 min.
The result of experimental investigation shows that optimised biodiesel yield was obtained maximum for 1-butanol (76.4%), for 1-pentanol (73.13%) and minimum for 2-propanol (56.86%).
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